EP 4163635 A1 20230412 - SENSING PLATFORM
Title (en)
SENSING PLATFORM
Title (de)
SENSORPLATTFORM
Title (fr)
PLATE-FORME DE DÉTECTION
Publication
Application
Priority
- LU 101273 A 20190621
- EP 20732599 A 20200616
- EP 2020066648 W 20200616
Abstract (en)
The present invention relates to a glucose sensor comprising a mutated biomolecule immobilised to a substrate, wherein the mutated biomolecule is immobilised to the substrate via a linker comprising a thiol reactive group and a substrate adherence group, wherein the biomolecule is mutated to introduce one or more surface accessible thiol moieties, and wherein the mutated biomolecule is connected to the linker via said one or more surface accessible thiol moieties on the biomolecule and said thiol reactive group on the linker, and wherein the biomolecule is glucose oxidase, concanavalin A, or glucose binding protein.
IPC 8 full level
G01N 33/66 (2006.01); C12Q 1/26 (2006.01)
CPC (source: CN EP KR US)
C12Q 1/006 (2013.01 - CN); C12Q 1/26 (2013.01 - CN EP KR US); C12Q 1/54 (2013.01 - CN KR US); G01N 33/66 (2013.01 - CN EP KR); C12Q 2565/607 (2013.01 - KR); G01N 21/6486 (2013.01 - US); G01N 2333/904 (2013.01 - CN KR)
C-Set (source: CN)
Citation (applicant)
- MICSONAI, A. ET AL.: "Accurate secondary structure prediction and fold recognition for circular dichroism spectroscopy", PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES, vol. 112, 2015, pages E3095 - E3103
- MICSONAI, A. ET AL.: "BeStSel: A web server for accurate protein secondary structure prediction and fold recognition from the circular dichroism spectra", NUCLEIC ACIDS RESEARCH, vol. 46, 2018, pages W315 - W322
- ASHKENAZY, H. ET AL.: "ConSurf 2010: calculating evolutionary conservation in sequence and structure of proteins and nucleic acids", NUCLEIC ACIDS RES., vol. 38, 2010, pages 529 - 533
- "GeneBank", Database accession no. X16061
- EDELHEIT, O.HANUKOGLU, A.HANUKOGLU, I.: "Simple and efficient site-directed mutagenesis using two single-primer reactions in parallel to generate mutants for protein structure-function studies", BMC BIOTECHNOL, vol. 9, 2009, pages 1 - 8
- LIN-CEREGHINO, J.: "Condensed protocol for competent cell preparation and transformation of the methylotrophic yeast P. pastoris", BIOTECHNIQUES, vol. 38, 2005, pages 44 - 48
- BATEMAN, R. C.EVANS, J. A.: "Using the Glucose Oxidase/Peroxidase System in Enzyme Kinetics", J. CHEM. EDUC., vol. 72, 1995, pages 240 - 241
- SWOBODA, B. E. P.MASSEY, V.: "Purification and Properties of the Glucose Oxidase from Aspergillus niger", J. BIOL. CHEM., vol. 240, 1965, pages 2209 - 2215
- YANG, J.: "Quantitative analysis of the (n,m) abundance of single-walled carbon nanotubes dispersed in ionic liquids by optical absorption spectra", MATERIALS CHEMISTRY AND PHYSICS, vol. 139, 2013, pages 233 - 240, XP028988150, DOI: 10.1016/j.matchemphys.2013.01.029
- MUKHORTAVA, A.: "Efficient Formation of Site-Specific Protein-DNA Hybrids Using Copper-Free Click Chemistry", BIOCONJUGATE CHEMISTRY, vol. 27, 2016, pages 1559 - 1563, XP055605507, DOI: 10.1021/acs.bioconjchem.6b00120
- BATEMAN, R. ET AL.: "Using the Glucose Oxidase/Peroxidase System in Enzyme Kinetics", JOURNAL OF CHEMICAL EDUCATION, vol. 12, 1995, pages A240 - A241
- KOMMOJU, P.CHEN, Z.BRUCKNER, R. C.MATHEWS, F. S.JORNS, M. S.: "Probing oxygen activation sites in two flavoprotein oxidases", BIOCHEMISTRY, vol. 50, 2011, pages 5521 - 5534
- LOOSER, V.: "Cultivation strategies to enhance productivity of Pichia pastoris: A review", BIOTECHNOLOGY ADVANCES, vol. 33, 2014, pages 1177 - 1193
- BROOKS, S. A.: "Appropriate glycosylation of recombinant proteins for human use: Implications of choice of expression system", MOLECULAR BIOTECHNOLOGY, vol. 28, 2004, pages 241 - 256
- FINNEGAN, S.: "EDTA: An Antimicrobial and Antibiofilm Agent for Use in Wound Care", ADVANCES IN WOUND CARE, vol. 4, 2015, pages 415 - 412
- KAVIMANDAN, N. ET AL.: "Synthesis and Characterization of Insulin-Transferrin Conjugates", BIOCOJUGATE CHEMISTRY, vol. 17, 2006, pages 1376 - 1384
- WU, C. W.YARBROUGH, L. R.WU, F. Y. H.: "N-(1-Pyrene)maleimide: A Fluorescent Cross-Linking Reagent", BIOCHEMISTRY, vol. 15, 1976, pages 2863 - 2868
- BAINS, G.PATEL, A. B.NARAYANASWAMI, V.: "Pyrene: A probe to study protein conformation and conformational changes", MOLECULES, vol. 16, 2011, pages 7909 - 7935
- CHOI, J. ET AL.: "Solvatochromism in single-walled carbon nanotubes", APPLIED PHYSICS LETTERS, vol. 90, 2007, pages 1 - 3
- JENG, E. ET AL.: "Detection of DNA hybridization using the near-infrared band-gap fluorescence of single-walled carbon nanotubes", NANO LETTERS, vol. 6, 2006, pages 371 - 375
- KIM, Y. ET AL.: "Efficient site-specific labeling of proteins via cysteines", BIOCONJUGATE CHEMISTRY, vol. 19, 2008, pages 786 - 791, XP055008636, DOI: 10.1021/bc7002499
- KARAJANAGI, S. S. ET AL.: "Protein-assisted solubilization of single-walled carbon nanotubes", LANGMUIR, vol. 22, 2006, pages 1392 - 1395
- BARONE, P. ET AL.: "Near-infrared optical sensors based on single-walled carbon nanotubes", NATURE MATERIALS, vol. 4, 2004, pages 86 - 92, XP002684879, DOI: 10.1038/nmat1276
- KIM, J.CAMPBELL, A. S.WANG, J.: "Wearable non-invasive epidermal glucose sensors: A review", TALANTA, vol. 177, 2018, pages 163 - 170, XP085255027, DOI: 10.1016/j.talanta.2017.08.077
- CHEN, C. ET AL.: "Current and emerging technology for continuous glucose monitoring", SENSORS (SWITZERLAND), vol. 17, 2017, pages 1 - 19
- KROPFF, J.: "Accuracy and longevity of an implantable continuous glucose sensor in the PRECISE study: A 180-day, prospective, multicenter, pivotal trial", DIABETES CARE, vol. 40, 2017, pages 63 - 68
- LUNDSGAARD-NIELSEN, S. M. ET AL.: "Critical-depth Raman spectroscopy enables home use non-invasive glucose monitoring", PLOS ONE, vol. 13, 2018, pages 1 - 11
- FENG, W.JI, P.: "Enzymes immobilized on carbon nanotubes", BIOTECHNOL. ADV., vol. 29, 2011, pages 889 - 895, XP028306422, DOI: 10.1016/j.biotechadv.2011.07.007
- ZUBKOVS, V.SCHUERGERS, N.LAMBERT, B.AHUNBAY, E.BOGHOSSIAN, A.A.MEDIATORLESS: "Reversible Optical Nanosensor Enabled through Enzymatic PocketDoping", SMALL, vol. 1701654, 2017, pages 1 - 10, XP055619520, DOI: 10.1002/smll.201701654
- YOON, H. ET AL.: "Angew. Chemie - Int.", vol. 50, 2011, article "Periplasmic binding proteins as optical modulators of single-walled carbon nanotube fluorescence: Amplifying a nanoscale actuator", pages: 1828 - 1831
- OLIVEIRA, S. F. ET AL.: "Protein functionalized carbon nanomaterials for biomedical applications", CARBON N. Y., vol. 95, 2015, pages 767 - 779, XP055833091, DOI: 10.1016/j.carbon.2015.08.076
- MUGURUMA, H.YOSHIDA, S.URATA, M.FUJISAWA, K.MATSUI, Y.: "An Amperometric Biosensor for Glucose Based on a Composite Electrode of Glucose Dehydrogenase, Carbon Nanotubes, and Plasma-polymerized Thin Films", ELECTROCHEMISTRY, vol. 76, 2008, pages 545 - 548
- FERRI, S.KOJIMA, K.SODE, K.: "Review of Glucose Oxidases and Glucose Dehydrogenases: A Bird's Eye View of Glucose Sensing Enzymes", J. DIABETES SCI. TECHNOL., vol. 5, 2011, pages 1068 - 1076, XP055216708, DOI: 10.1177/193229681100500507
- SANZ, V.COLEY, H. M.SILVA, S. R. P.MCFADDEN, J.: "Modeling the binding of peptides on carbon nanotubes and their use as protein and DNA carriers", J. NANOPARTICLE RES., vol. 14, 2012, pages 1 - 13, XP035016793, DOI: 10.1007/s11051-011-0695-2
- GE, C. ET AL.: "Binding of blood proteins to carbon nanotubes reduces cytotoxicity", PROC. NATL. ACAD. SCI., vol. 108, 2011, pages 16968 - 16973, XP055789195, DOI: 10.1073/pnas.1105270108
- WILLIAMS, R. M. ET AL.: "Noninvasive ovarian cancer biomarker detection via an optical nanosensor implant", SCI. ADV., vol. 4, 2018, pages 1 - 11
- BISKER, G. ET AL.: "Protein-targeted corona phase molecular recognition", NAT. COMMUN., vol. 7, 2016, pages 1 - 14, XP055728115, DOI: 10.1038/ncomms10241
- WOHLFAHRT, G. ET AL.: "1.8 and 1.9 A resolution structures of the Penicillium amagasakiense and Aspergillus niger glucose oxidases as a basis for modelling substrate complexes", ACTA CRYSTALLOGR. SECT. D BIOL. CRYSTALLOGR., vol. 55, 1999, pages 969 - 977, XP008130534, DOI: 10.1107/S0907444999003431
- GOUDA, M. D.SINGH, S. A.RAO, A. G. A.THAKUR, M. S.KARANTH, N. G.: "Thermal inactivation of glucose oxidase: Mechanism and stabilization using additives", J. BIOL. CHEM., vol. 278, 2003, pages 24324 - 24333, XP002474838, DOI: 10.1074/jbc.M208711200
- FILLA, N.RAMASAMY, R.WANG, X.: "Forces, energetics, and dynamics of conjugatedcarbon ring tethers adhered to CNTs: a computational investigation", PHYS. CHEM. CHEM. PHYS., vol. 20, 2018, pages 11327 - 11335
- YANG, Z.WANG, Z.TIAN, X.XIU, P.ZHOU, R.: "Amino acid analogues bind to carbon nanotube via - Interactions: Comparison of molecular mechanical and quantum mechanical calculations", J. CHEM. PHYS., vol. 136, 2012, pages 1 - 10
- HE, Z.ZHOU, J.: "Probing carbon nanotube-amino acid interactions in aqueous solution with molecular dynamics simulations", CARBON N. Y., vol. 78, 2014, pages 500 - 509, XP029043399, DOI: 10.1016/j.carbon.2014.07.031
- LOOSER, V. ET AL.: "Cultivation strategies to enhance productivity of Pichia pastoris: A review", BIOTECHNOL. ADV., vol. 33, 2014, pages 1177 - 1193
- WITT, S.SINGH, M.KALISZ, H. M.: "Structural and kinetic properties of nonglycosylated recombinant Penicillium amagasakiense glucose oxidase expressed in Escherichia coli", APPL. ENVIRON. MICROBIOL., vol. 64, 1998, pages 1405 - 1411, XP055886607, DOI: 10.1128/AEM.64.4.1405-1411.1998
- BROOKS, S. A.: "Implications of choice of expression system", MOL. BIOTECHNOL., vol. 28, 2004, pages 241 - 256
- HAMILTON, S. R.GERNGROSS, T. U.: "Glycosylation engineering in yeast: the advent of fully humanized yeast", CURR. OPIN. BIOTECHNOL., vol. 18, 2007, pages 387 - 392, XP022350908, DOI: 10.1016/j.copbio.2007.09.001
- KRAINER, F. W.: "Knockout of an endogenous mannosyltransferase increases the homogeneity of glycoproteins produced in Pichia pastoris", SCI. REP., vol. 3, 2013, pages 1 - 13, XP055253676, DOI: 10.1038/srep03279
- GU, L.ZHANG, J.LIU, B.DU, G.CHEN, J.: "High-level extracellular production of glucose oxidase by recombinant Pichia pastoris using a combined strategy", APPL. BIOCHEM. BIOTECHNOL., vol. 175, 2015, pages 1429 - 47
- FINNEGAN, S.PERCIVAL, S. L.: "EDTA: An Antimicrobial and Antibiofilm Agent for Use in Wound Care", ADV. WOUND CARE, vol. 4, 2015, pages 415 - 421, XP055287554, DOI: 10.1089/wound.2014.0577
- LESKOVAC, V.TRIVIC, S.WOHLFAHRT, G.KANDRAC, J.PERICIN, D.: "Glucose oxidase from Aspergillus niger: The mechanism of action with molecular oxygen, quinones, and oneelectron acceptors", INT. J. BIOCHEM. CELL BIOL., vol. 37, 2005, pages 731 - 750, XP027741942
- KAVIMANDAN, N. J.LOSIX, E.WILSON, J. J.BRODBELT, J. S.PEPPAS, N. A.: "Synthesis and Characterization of Insulin-Transferrin Conjugates", BIOCOJUGATE CHEM, vol. 17, 2006, pages 11376 - 1384
- SAIFUDDIN, N.RAZIAH, A. Z.JUNIZAH, A. R.: "Carbon nanotubes: A review on structure and their interaction with proteins", J. CHEM., vol. 676815, 2013, pages 1 - 18
- JENG, E. S.MOLL, A. E.ROY, A. C.GASTALA, J. B.STRANO, M. S.: "Detection of DNA hybridization using the near-infrared band-gap fluorescence of single-walled carbon nanotubes", NANO LETT, vol. 6, 2006, pages 371 - 375
- CHOI, J. H.STRANO, M. S.: "Solvatochromism in single-walled carbon nanotubes", APPL. PHYS. LETT., vol. 90, 2007, pages 9 - 12
- KARAJANAGI, S. S.VERTEGEL, A. A.KANE, R. S.DORDICK, J. S.: "Structure and function of enzymes adsorbed onto single-walled carbon nanotubes", LANGMUIR, vol. 20, 2004, pages 11594 - 11599
- ZUBKOVS, V. ET AL.: "Spinning-disc confocal microscopy in the second near-infrared window (NIR-II", SCI. REP., vol. 8, 2018, pages 1 - 10
- BARONE, P. W.BAIK, S.HELLER, D. A.STRANO, M. S.: "Near-infrared optical sensors based on single-walled carbon nanotubes", NAT. MATER., vol. 4, 2004, pages 86 - 92, XP002684879, DOI: 10.1038/nmat1276
- ASHKENAZY, H., EREZ, E., MARTZ, E., PUPKO, T. & BEN-TAL, N.: "Calculating evolutionary conservation in sequence and structure of proteins and nucleic acids", NUCLEIC ACIDS RES., vol. 38, 2010, pages 529 - 533
- LIN-CEREGHINO, J. ET AL.: "Condensed protocol for competent cell preparation and transformation of the methylotrophic yeast Pichia pastoris", BIOTECHNIQUES, vol. 38, 2005, pages 44 - 48
- MICSONAI, A. ET AL.: "BeStSel: A web server for accurate protein secondary structure prediction and fold recognition from the circular dichroism spectra", NUCLEIC ACIDS RES., vol. 46, 2018, pages W315 - W322
- MICSONAI, A. ET AL.: "Accurate secondary structure prediction and fold recognition for circular dichroism spectroscopy", PROC. NATL. ACAD. SCI., vol. 112, 2015, pages E3095 - E3103
- MUKHORTAVA, A.SCHLIERF, M.: "Efficient Formation of Site-Specific Protein-DNA Hybrids Using Copper-Free Click Chemistry", BIOCONJUG. CHEM., vol. 27, 2016, pages 1559 - 1563, XP055605507, DOI: 10.1021/acs.bioconjchem.6b00120
- YANG, J.ZHANG, Z.ZHANG, D.LI, Y.: "Quantitative analysis of the (n,m) abundance of single-walled carbon nanotubes dispersed in ionic liquids by optical absorption spectra", MATER. CHEM. PHYS., vol. 139, 2013, pages 233 - 240, XP028988150, DOI: 10.1016/j.matchemphys.2013.01.029
- "Noncovalent interaction of single-walled nanotubes with 1-pyrenebutanoic acid suceimide ester and glucoseoxidase", J. OF PHYSICAL CHEMISTRY C, 2011
- G. HONG, S. DIAOA. L. ANTARISH. DAI: "Carbon nanomaterials for biological imaging and nanomedical therapy", CHEMICAL REVIEWS, 2015
- WILLIAMS, R. ET AL.: "Noninvasive ovarian cancer biomarker detection via an optical nanosensor implant", SCIENCE ADVANCES, vol. 4, 2018, pages 1 - 11
- FLORIAN, A. ET AL.: "Angewandte Chemie Int. Ed.", 2019, article "Nanobody conjugated nanotubes for targeted near-infrared in vivo imaging and sensing"
Citation (search report)
- [X] EP 2508600 A1 20121010 - AMANO ENZYME INC [JP]
- [XY] US 2010285514 A1 20101111 - CLAUSSEN JONATHAN CLAY [US], et al
- [A] HELEN V HSIEH ET AL: "Direct detection of glucose by surface plasmon resonance with bacterial glucose/galactose-binding protein", BIOSENSORS AND BIOELECTRONICS, ELSEVIER SCIENCE LTD, UK, AMSTERDAM , NL, vol. 19, no. 7, 15 February 2004 (2004-02-15), pages 653 - 660, XP001206132, ISSN: 0956-5663, DOI: 10.1016/S0956-5663(03)00271-9
- [A] VITALIJS ZUBKOVS ET AL: "Mediatorless, Reversible Optical Nanosensor Enabled through Enzymatic Pocket Doping", SMALL, vol. 13, no. 42, 1 November 2017 (2017-11-01), pages 1 - 10, XP055619520, ISSN: 1613-6810, DOI: 10.1002/smll.201701654
- [Y] ALESSANDRA ANTONUCCI; JUSTYNA KUPIS-ROZMYSLOWICZ; ARDEMIS A BOGHOSSIAN: "Noncovalent Protein and Peptide Functionalization of Single-Walled Carbon Nanotubes for Biodelivery and Optical Sensing Applications", APPLIED MATERIALS & INTERFACES, vol. 9, no. 13, 27 March 2017 (2017-03-27), US, pages 11321 - 11331, XP055619556, ISSN: 1944-8244, DOI: 10.1021/acsami.7b00810
- [XY] ZUBKOVS ET AL: "Protein Bioconjugation to Carbon Nanotubes for Near-Infrared Sensing", INTERNET CITATION, 19 June 2019 (2019-06-19), XP002794073, Retrieved from the Internet <URL:http://infoscience.epfl.ch/record/267489> [retrieved on 20190906]
Designated contracting state (EPC)
AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR
DOCDB simple family (publication)
WO 2020254336 A1 20201224; AU 2020294875 A1 20220217; AU 2022204551 A1 20220721; CN 114599793 A 20220607; CN 115197995 A 20221018; EP 3987049 A1 20220427; EP 4163635 A1 20230412; JP 2022130615 A 20220906; JP 2022538067 A 20220831; KR 20220035138 A 20220321; KR 20220098272 A 20220711; LU 101273 B1 20201228; US 2022315979 A1 20221006; US 2022333154 A1 20221020
DOCDB simple family (application)
EP 2020066648 W 20200616; AU 2020294875 A 20200616; AU 2022204551 A 20220628; CN 202080054513 A 20200616; CN 202210708072 A 20200616; EP 20732599 A 20200616; EP 22182419 A 20200616; JP 2021576173 A 20200616; JP 2022105254 A 20220630; KR 20227002202 A 20200616; KR 20227022063 A 20200616; LU 101273 A 20190621; US 202017620343 A 20200616; US 202217858628 A 20220706